The roles of the $T_{c\bar{s}0}(2900)^0$ and $D_0^*(2300)$ in the process $B^-\to D_s^+K^-π^-$ (2306.16101v2)
Abstract: Motivated by the recent LHCb observations of $T_{c\bar{s}0}(2900)0$ and $T_{c\bar{s}0}(2900){++}$ in the processes $B0\to\bar{D}0D_s+\pi-$ and $B+\to D-D_s+\pi+$, we have investigated the decay $B-\to D_s+K-\pi-$ by taking into account the contributions from the $S$-wave vector-vector interactions, and the $S$-wave $D+_s K-$ interactions. Our results show that the $D_s+K-$ invariant mass distribution has an enhancement structure near the threshold, associated with the $D*_0(2300)$, which is in good agreement with the Belle measurements. We have also predicted the $D+_s\pi-$ invariant mass distribution and the Dalitz plot, which show the significant signal of the $T_{c\bar{s}0}(2900)$. With the same formalism, the $D-_sK0_s$ invariant mass distribution of the process $B0 \to D-_sK0_s\pi+$ measured by Belle could be well reproduced, and the peak of $T_{c\bar{s}0}(2900)$ is expected to be observed around 2900~MeV in the $D-_s\pi+$ invariant mass distribution. Our results could be tested by the Belle II and LHCb experiments in the future.
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